Over-the-range microwave oven and method of using the same
US-9854628-B2 · Dec 26, 2017 · US
US2016165673A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016165673-A1 |
| Application number | US-201514597847-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jan 15, 2015 |
| Priority date | Dec 5, 2014 |
| Publication date | Jun 9, 2016 |
| Grant date | — |
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An over-the-range microwave oven that includes a duct unit configured to direct air from the back of the oven to the front and further includes an integrated duct module. The duct unit includes: a first panel at the bottom, a pair of second panels forming both lateral side surfaces of the duct unit. The integrated duct module is disposed on the first panel and integrates a plurality of electrical components, such as a power source unit, a running capacitor, a noise filter and a fuse.
Opening claim text (preview).
What is claimed is: 1 . An over-the-range microwave oven comprising: a housing defining an exterior; a cooking unit disposed in the housing; a duct unit disposed in the housing; a first panel forming a bottom surface of the duct unit; a pair of second panels disposed on two sides of the first panel and forming lateral side surfaces of the duct unit; and an integrated duct module disposed on the first panel and comprising a plurality of electrical components associated with the duct unit. 2 . The over-the-range microwave oven of claim 1 , wherein the duct unit comprises: an upper duct unit disposed between the housing and the cooking unit and disposed on an upper side of the cooking unit, wherein the pair of second panels are disposed between the first panel and the housing, wherein an interval gap between the pair of second panels decreases along an air flow direction, and wherein further the duct module is disposed outside the pair of second panels. 3 . The over-the-range microwave oven of claim 2 further comprising: a third panel disposed on the rear of the pair of second panels and comprising an air inlet hole. 4 . The over-the-range microwave oven of claim 3 , wherein the pair of second panels comprise: a pair of first horizontal portions respectively disposed on both sides of the third panel and in parallel to each other; a pair of inclined portions respectively extending from the pair of first horizontal portions, wherein a gap between the pair of inclined portions gradually decreases; and a pair of second horizontal portions respectively extending from the pair of inclined portions and disposed in parallel to each other. 5 . The over-the-range microwave oven of claim 2 , wherein the pair of second panels are disposed symmetrically to each other. 6 . The over-the-range microwave oven of claim 4 , wherein the integrated duct module comprises: a power source unit disposed on the first panel outside one of the pair of first horizontal portions; a running capacitor disposed on the first panel outside one of the pair of inclined portions; a noise filter disposed on the first panel outside one of the pair of second horizontal portions; and a fuse disposed on the first panel outside another one of the pair of first horizontal portions. 7 . The over-the-range microwave oven of claim 4 , wherein the integrated duct module comprises a humidity sensor disposed on the first panel outside another one of the pair of inclined portions and another one of the pair of second horizontal portions. 8 . The over-the-range microwave oven of claim 7 further comprising: a fourth panel disposed on the first panel, wherein a region formed by a combination of the fourth panel, the another one of the pair of inclined portions, and the another one of the pair of second horizontal portions is symmetric, and wherein the humidity sensor is disposed within the region. 9 . The over-the-range microwave oven of claim 4 , wherein the integrated duct module further comprises a lighting unit disposed on a lower surface of the first panel. 10 . The over-the-range microwave oven of claim 4 further comprising an air filter disposed on the pair of second horizontal portions. 11 . The over-the-range microwave oven of claim 3 , further comprising: an air discharge unit disposed between the third panel and a rear surface of the housing, where the air discharge unit is configured to drive air into the duct unit. 12 . The over-the-range microwave oven of claim 11 , wherein the air discharge unit comprises an air discharge motor and an impeller assembly driven by the air discharge motor, and wherein the impeller assembly is configured to pump air into the duct unit. 13 . The over-the-range microwave oven of claim 12 , wherein the third panel comprises a first inlet hole and a second inlet hole, and wherein the impeller assembly comprises: a first impeller disposed on a first side of the air discharge motor and configured to pump air through the first inlet hole; and a second impeller disposed on a second side of the air discharge motor and configured to pump air through the second inlet hole. 14 . The over-the-range microwave oven of claim 13 , wherein the third panel further comprises a bent portion protruding forward between the first inlet hole and the second inlet hole. 15 . A method of using an over-the-range microwave oven, the method comprising: activating an air discharge unit; exhausting air from around a range through an upper duct unit of the microwave oven, wherein microwave oven comprises a drive unit configured to draw air therein, wherein the upper duct unit is disposed between a housing and a cooking unit and comprises an air flow path, wherein the air flow path comprises: a first panel disposed on an upper side of the cooking unit; a pair of second panels disposed between the first panel and the housing; and a third panel, wherein the second panels are disposed symmetrically and a distance therebetween that decreases toward the front side, and wherein the third panel is disposed in the rear of the pair of second panels and comprises air inlet holes; detecting a temperature using a fuse disposed on the first panel; and upon detecting a temperature greater than a predetermined temperature, automatically shutting off electric power supplied from a power source unit that is disposed on the first panel.
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